An automatic collator for collating financial documents

CN116728994BActive Publication Date: 2026-09-29HUANENG GUANYUN CLEAN ENERGY CO LTD
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Patent Information

Application Number
CN202310533145.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-05-11
Publication Date
2026-09-29
Estimated Expiration
2043-05-11

AI Technical Summary

Technical Problem

[0003]但是现阶段的财务凭证装订过程中需要工作人员进行人工对齐,对齐过程需要花费大量的工作时间,造成效率低下,此外人工对齐会造成财务凭证的整齐度较低,影响装订质量,此外,现阶段的装订机在装订过程中会将装订孔留在外部,影响装订的美观性

Benefits of technology

[0056]通过增设整理部,设置传感器和控制模块,通过传感器获取的实时财务凭证重量,控制模块根据实时的财务凭证重量设定第一支撑板的倾斜角度和振动结构的工作参数,完成对财务凭证的对齐,提高装订效率和装订质量。

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Abstract

The application relates to the technical field of financial document binding, in particular to an automatic financial document arranging and binding machine. The machine comprises a base, a first conveying belt and a second conveying belt arranged on the base, an arranging unit connected with the base through the first conveying belt and the second conveying belt, the first conveying belt and the second conveying belt being used for controlling the movement direction of the arranging unit, the arranging unit being used for aligning the financial documents, a binding unit connected with the base, and the binding unit being used for binding the financial documents. The arranging unit is additionally arranged, a sensor and a control module are arranged, the real-time weight of the financial documents is obtained through the sensor, the control module sets the inclination angle of the first supporting plate and the working parameters of the vibration structure according to the real-time weight of the financial documents, the alignment of the financial documents is completed, and the binding efficiency and the binding quality are improved. The positions of the first sliding groove, the punching drill and the positioning needle are additionally arranged, the I-shaped cover is matched, the binding hole is arranged in the cover during the binding, and the appearance of the bound book is improved.
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Description

Technical Field

[0001] This application relates to the field of financial document binding technology, and in particular to a binding machine that automatically organizes financial documents. Background Technology

[0002] A binding machine is a mechanical (manual, automatic, or fully automatic) binding device that uses staples, hot melt adhesive, nylon tubing, or other materials to secure paper, plastic, leather, etc. Depending on their application, they can be divided into industrial binding machines and consumer binding machines. They are commonly used in printing plants, corporate financial offices, and document management. They are widely used in banks, securities firms, insurance companies, telecommunications companies, as well as schools, government agencies, and enterprises for binding financial documents, invoices, ledgers, reports, archives, periodicals, files, drawings, exam papers, and books.

[0003] However, the current process of binding financial documents requires manual alignment by staff, which takes a lot of time and is inefficient. In addition, manual alignment results in lower neatness of financial documents, affecting the binding quality. Furthermore, current binding machines leave binding holes on the outside during the binding process, affecting the aesthetics of the binding. Summary of the Invention

[0004] The purpose of this application is to solve the above-mentioned technical problems by providing an automatic financial document binding machine, which aims to realize the automatic sorting of financial documents and improve binding efficiency.

[0005] In some embodiments of this application, by adding a sorting section, setting up sensors and a control module, the control module sets the tilt angle of the first support plate and the working parameters of the vibration structure based on the real-time weight of the financial documents obtained by the sensors, thereby completing the alignment of the financial documents and improving binding efficiency and binding quality.

[0006] In some embodiments of this application, by setting a binding section and adding a first slide groove to move the position of the punch and positioning pin, and in conjunction with the I-shaped cover, the binding hole is set inside the cover during binding, thereby improving the aesthetics of the bound book.

[0007] In some embodiments of this application, by adding a central control module, the vibration parameters of the sorting section are dynamically adjusted according to the neatness of the previous binding, thereby improving sorting efficiency and alignment instructions, and improving overall binding efficiency.

[0008] In some embodiments of this application, a binding machine for automatically organizing financial documents is provided, comprising:

[0009] A base, on which a first conveyor belt and a second conveyor belt are provided.

[0010] The sorting unit is connected to the base via a first conveyor belt and a second conveyor belt. The first and second conveyor belts are used to control the movement direction of the sorting unit, which is used to align financial documents.

[0011] A binding section, which is connected to the base, is used to bind financial documents.

[0012] In some embodiments of this application, the binding section includes:

[0013] case;

[0014] The first groove is disposed inside the housing.

[0015] A drilling drill, wherein the drilling drill is disposed in the first slide groove, and the first slide groove is used to control the moving direction of the drilling drill;

[0016] A positioning pin is disposed in the first sliding groove, and a heating element is disposed at the lower end of the positioning pin. The housing is provided with heat dissipation holes.

[0017] A central control module is located inside the housing, and the central control module is used to set the working parameters of the binding part.

[0018] In some embodiments of this application, the sorting unit includes:

[0019] A sorting groove, wherein a first support plate and a second support plate are provided inside the sorting groove;

[0020] The first support plate and the second support plate are connected by an angle structure, which is used to control the tilt angle of the first support plate.

[0021] A sensor, connected to the first support plate, is used to acquire real-time financial document weight data;

[0022] The vibration module is connected to the first support plate.

[0023] In some embodiments of this application, the tilting structure includes multiple telescopic rods;

[0024] One end of the telescopic rod is connected to the first support plate, and the other end of the telescopic rod is connected to the second support plate.

[0025] In some embodiments of this application, the sorting unit further includes:

[0026] The first control module is used to set the real-time tilt angle of the first support plate based on the real-time weight of the financial documents.

[0027] In some embodiments of this application, the first control module is further configured to:

[0028] A preset financial document weight matrix A is defined as A(A1, A2, A3, A4), where A1 is the preset first financial document weight, A2 is the preset second financial document weight, A3 is the preset third financial document weight, and A4 is the preset fourth financial document weight, and A1 < A2 < A3 < A4.

[0029] The first control module is also used to preset the tilt angle matrix B, and set B(B1, B2, B3, B4), where B1 is the preset first tilt angle, B2 is the preset second tilt angle, B3 is the preset third tilt angle, B4 is the preset fourth tilt angle, and B1 < B2 < B3 < B4.

[0030] The first control module is also used to obtain the real-time financial document weight a, and set the real-time tilt angle b of the first support plate according to the real-time financial document weight a.

[0031] If a < A1, set the real-time tilt angle b of the first support plate to the preset first tilt angle B1, that is, b = B1;

[0032] If A1 < a < A2, set the real-time tilt angle b of the first support plate to the preset second tilt angle B2, that is, b = B2;

[0033] If A2 < a < A3, set the real-time tilt angle b of the first support plate to the preset third tilt angle B3, that is, b = B3;

[0034] If A3 < a < A4, set the real-time tilt angle b of the first support plate to the preset fourth tilt angle B4, that is, b = B4.

[0035] In some embodiments of this application, the sorting unit further includes:

[0036] The second control module is used to set the vibration duration based on the real-time weight of the financial document.

[0037] In some embodiments of this application, the second control module is further configured to:

[0038] A preset vibration duration matrix T is defined as T(T1, T2, T3, T4), where T1 is the preset first vibration duration, T2 is the preset second vibration duration, T3 is the preset third vibration duration, and T4 is the preset fourth vibration duration, and T1 < T2 < T3 < T4.

[0039] The second control module is also used to obtain the real-time financial document weight 'a', and set the real-time vibration duration 't' of the first support plate based on the real-time financial document weight 'a'.

[0040] If a < A1, set the real-time vibration duration t of the first support plate to the preset first vibration duration T1, that is, t = T1;

[0041] If A1 < a < A2, set the real-time vibration duration t of the first support plate to the preset second vibration duration T2, that is, t = T2;

[0042] If A2 < a < A3, set the real-time vibration duration t of the first support plate to the preset third vibration duration T3, that is, t = T3;

[0043] If A3 < a < A4, set the real-time vibration duration t of the first support plate to the preset fourth vibration duration T4, i.e., t = T4.

[0044] In some embodiments of this application, the central control module is further used for:

[0045] Obtain the neatness evaluation value of the previous batch of financial vouchers;

[0046] The central control module sets a correction coefficient based on the uniformity evaluation value to correct the real-time vibration duration of the current batch of financial vouchers.

[0047] In some embodiments of this application, the central control module is further configured to:

[0048] A preset vibration duration correction coefficient matrix N is defined as N(n1, n2, n3, n4), where n1 is the preset first vibration duration correction coefficient, n2 is the preset second vibration duration correction coefficient, n3 is the preset third vibration duration correction coefficient, and n4 is the preset fourth vibration duration correction coefficient, and 1 < n1 < n2 < n3 < n4.

[0049] A pre-defined neatness evaluation value matrix C is defined as C(C1, C2, C3, C4), where C1 is the pre-defined first neatness evaluation value, C2 is the pre-defined second neatness evaluation value, C3 is the pre-defined third neatness evaluation value, and C4 is the pre-defined fourth neatness evaluation value, and C1 < C2 < C3 < C4.

[0050] Obtain the neatness evaluation value c of the previous batch of financial vouchers, and set the real-time correction coefficient n;

[0051] If C1 < c < C2, set the real-time correction coefficient n = n4, and the real-time vibration duration of the current batch of financial vouchers after correction is t = n4 * Ti (i = 1, 2, 3, 4);

[0052] If C2 < c < C3, set the real-time correction coefficient n = n3, and the real-time vibration duration of the current batch of financial vouchers after correction is t = n3 * Ti (i = 1, 2, 3, 4);

[0053] If C3 < c < C4, set the real-time correction coefficient n = n2, and the real-time vibration duration of the current batch of financial vouchers after correction is t = n2 * Ti (i = 1, 2, 3, 4);

[0054] If c > C4, set the real-time correction coefficient n = n1, and the real-time vibration duration of the current batch of financial vouchers is t = n1 * Ti (i = 1, 2, 3, 4).

[0055] Compared with the prior art, the binding machine for automatically organizing financial vouchers according to the embodiments of this application has the following advantages:

[0056] By adding a sorting section and installing sensors and a control module, the real-time weight of the financial documents is obtained by the sensors. Based on this real-time weight, the control module sets the tilt angle of the first support plate and the working parameters of the vibration structure to align the financial documents, thereby improving binding efficiency and quality.

[0057] By setting up a binding section and adding a first sliding groove to move the position of the punch and positioning pin, and in conjunction with the I-shaped cover, the binding holes are set inside the cover during binding, improving the aesthetics of the bound book.

[0058] By adding a central control module, the vibration parameters of the sorting section are dynamically adjusted according to the neatness of the previous binding, thereby improving sorting efficiency and alignment instructions and enhancing overall binding efficiency. Attached Figure Description

[0059] Figure 1 This is a schematic diagram of the structure of a binding machine for automatically organizing financial documents in a preferred embodiment of this application;

[0060] Figure 2 This is a cross-sectional view of the sorting section of a binding machine for automatically sorting financial documents, according to a preferred embodiment of this application.

[0061] Figure 3 This is a cross-sectional view of the binding section of a binding machine for automatically organizing financial documents in a preferred embodiment of this application.

[0062] In the figure, 100 - base; 101 - first conveyor belt; 200 - sorting section; 201 - first support plate; 202 - second support plate; 203 - tilting structure; 204 - vibration module; 205 - sensor; 300 - binding section; 301 - housing; 302 - first slide groove; 303 - drilling drill. Detailed Implementation

[0063] The specific embodiments of this application will be described in further detail below with reference to the accompanying drawings and examples. The following examples are used to illustrate this application, but are not intended to limit the scope of this application.

[0064] In the description of this application, it should be understood that the terms "center", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application.

[0065] The terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this application, unless otherwise stated, "a plurality of" means two or more.

[0066] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection between two components. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.

[0067] like Figure 1 - Figure 3 As shown in the preferred embodiment of this application, an automatic binding machine for organizing financial documents includes:

[0068] Base 100, on which a first conveyor belt 101 and a second conveyor belt are provided.

[0069] The sorting unit 200 is connected to the base 100 via a first conveyor belt 101 and a second conveyor belt. The first conveyor belt 101 and the second conveyor belt are used to control the movement direction of the sorting unit 200. The sorting unit 200 is used to align financial documents.

[0070] The binding part 300 is connected to the base 100 and is used to bind financial documents.

[0071] Specifically, the binding department 300 includes:

[0072] Housing 301;

[0073] The first groove 302 is disposed inside the housing 301.

[0074] A drilling drill 303 is disposed in a first sliding groove 302, which is used to control the moving direction of the drilling drill 303.

[0075] The positioning pin is set in the first slide groove 302, and a heating element is set at the lower end of the positioning pin. The housing 301 is provided with heat dissipation holes.

[0076] The central control module is located inside the housing 301 and is used to set the working parameters of the binding section 300.

[0077] Specifically, the sorting department 200 includes:

[0078] A sorting tank, in which a first support plate 201 and a second support plate 202 are provided;

[0079] The first support plate 201 and the second support plate 202 are connected by an inclination structure 203, which is used to control the inclination angle of the first support plate 201.

[0080] Sensor 205 is connected to the first support plate 201 and is used to acquire real-time financial document weight data.

[0081] The vibration module 204 is connected to the first support plate 201.

[0082] Specifically, the tilting structure 203 includes multiple telescopic rods;

[0083] One end of the telescopic rod is connected to the first support plate 201, and the other end of the telescopic rod is connected to the second support plate 202.

[0084] Specifically, sensor 205 is a weight sensor. It can collect weight data of financial documents.

[0085] Specifically, its sorting slot has an "L" shaped structure. When binding is required, the sorting section 200 moves to the end away from the binding section 300 via the first conveyor belt 101 and the second conveyor belt, and puts in the financial documents to be bound. The tilting structure 203 adjusts the state of the corresponding telescopic rod to tilt the first support plate 201 and aligns the financial documents through vibration.

[0086] Specifically, after the financial documents are aligned, the sorting unit 200 moves to the side near the binding unit 300 via the first conveyor belt 101 and the second conveyor belt, and performs the binding operation by adjusting the position of the punch 303 and the positioning pin via the first slide 302.

[0087] Specifically, during the binding process, an I-shaped cover is installed on the side of the sorting slot where the baffle is not installed.

[0088] Specifically, the first support plate 201 and the second support plate 202 are provided with corresponding punching and binding structures. These are used in conjunction with a punch drill 303 and a positioning pin for binding.

[0089] In a preferred embodiment of this application, the sorting unit further includes:

[0090] The first control module is used to set the real-time tilt angle of the first support plate based on the real-time weight of the financial documents.

[0091] Specifically, a preset financial document weight matrix A is defined as A(A1, A2, A3, A4), where A1 is the preset first financial document weight, A2 is the preset second financial document weight, A3 is the preset third financial document weight, and A4 is the preset fourth financial document weight, and A1 < A2 < A3 < A4.

[0092] The first control module is also used to preset the tilt angle matrix B, setting B(B1, B2, B3, B4), where B1 is the preset first tilt angle, B2 is the preset second tilt angle, B3 is the preset third tilt angle, B4 is the preset fourth tilt angle, and B1 < B2 < B3 < B4.

[0093] The first control module is also used to obtain the real-time financial document weight a, and set the real-time tilt angle b of the first support plate according to the real-time financial document weight a.

[0094] If a < A1, set the real-time tilt angle b of the first support plate to the preset first tilt angle B1, that is, b = B1;

[0095] If A1 < a < A2, set the real-time tilt angle b of the first support plate to the preset second tilt angle B2, that is, b = B2;

[0096] If A2 < a < A3, set the real-time tilt angle b of the first support plate to the preset third tilt angle B3, that is, b = B3;

[0097] If A3 < a < A4, set the real-time tilt angle b of the first support plate to the preset fourth tilt angle B4, that is, b = B4.

[0098] Specifically, the organization department also includes:

[0099] The second control module is used to set the vibration duration based on the real-time weight of the financial documents.

[0100] Specifically, a preset vibration duration matrix T is set as T(T1, T2, T3, T4), where T1 is the preset first vibration duration, T2 is the preset second vibration duration, T3 is the preset third vibration duration, and T4 is the preset fourth vibration duration, and T1 < T2 < T3 < T4.

[0101] The second control module is also used to obtain the real-time financial document weight a, and set the real-time vibration duration t of the first support plate according to the real-time financial document weight a.

[0102] If a < A1, set the real-time vibration duration t of the first support plate to the preset first vibration duration T1, that is, t = T1;

[0103] If A1 < a < A2, set the real-time vibration duration t of the first support plate to the preset second vibration duration T2, that is, t = T2;

[0104] If A2 < a < A3, set the real-time vibration duration t of the first support plate to the preset third vibration duration T3, that is, t = T3;

[0105] If A3 < a < A4, set the real-time vibration duration t of the first support plate to the preset fourth vibration duration T4, i.e., t = T4.

[0106] It is understood that in the above embodiments, by presetting the financial document weight matrix, vibration duration matrix and tilt angle matrix, the real-time tilt angle is set according to the weight of the financial documents to be bound, and the preset tilt angle is reached by adjusting the corresponding telescopic rod. The vibration duration is set according to different financial document weights to ensure sorting efficiency, complete the alignment of financial documents, and improve binding efficiency and binding quality.

[0107] In a preferred embodiment of this application, the central control module is further configured to:

[0108] Obtain the neatness evaluation value of the previous batch of financial vouchers;

[0109] The central control module adjusts the real-time vibration duration of the current batch of financial vouchers based on the uniformity evaluation value and the correction coefficient.

[0110] Specifically, the preset vibration duration correction coefficient matrix N is set as N(n1, n2, n3, n4), where n1 is the preset first vibration duration correction coefficient, n2 is the preset second vibration duration correction coefficient, n3 is the preset third vibration duration correction coefficient, and n4 is the preset fourth vibration duration correction coefficient, and 1 < n1 < n2 < n3 < n4.

[0111] A pre-defined neatness evaluation value matrix C is defined as C(C1, C2, C3, C4), where C1 is the pre-defined first neatness evaluation value, C2 is the pre-defined second neatness evaluation value, C3 is the pre-defined third neatness evaluation value, and C4 is the pre-defined fourth neatness evaluation value, and C1 < C2 < C3 < C4.

[0112] Obtain the neatness evaluation value c of the previous batch of financial vouchers, and set the real-time correction coefficient n;

[0113] If C1 < c < C2, set the real-time correction coefficient n = n4, and the real-time vibration duration of the current batch of financial vouchers after correction is t = n4 * Ti (i = 1, 2, 3, 4);

[0114] If C2 < c < C3, set the real-time correction coefficient n = n3, and the real-time vibration duration of the current batch of financial vouchers after correction is t = n3 * Ti (i = 1, 2, 3, 4);

[0115] If C3 < c < C4, set the real-time correction coefficient n = n2, and the real-time vibration duration of the current batch of financial vouchers after correction is t = n2 * Ti (i = 1, 2, 3, 4);

[0116] If c > C4, set the real-time correction coefficient n = n1, and the real-time vibration duration of the current batch of financial vouchers is t = n1 * Ti (i = 1, 2, 3, 4).

[0117] Specifically, before binding begins, the neatness of the financial documents is checked. If they are not up to standard, they are vibrated again to align them, and a neatness evaluation value is generated based on their neatness. The higher the neatness, the higher the evaluation value.

[0118] It is understood that in the above embodiments, by setting a vibration duration correction coefficient, the vibration parameters of the sorting section are dynamically adjusted according to the neatness of the previous binding, thereby improving sorting efficiency and alignment instructions and improving overall binding efficiency.

[0119] According to the first concept of this application, by adding a sorting section, setting up sensors and a control module, the real-time weight of the financial documents is obtained by the sensors, and the control module sets the tilt angle of the first support plate and the working parameters of the vibration structure according to the real-time weight of the financial documents, thereby completing the alignment of the financial documents and improving binding efficiency and binding quality.

[0120] According to the second concept of this application, by setting up a binding section, adding a first slide to move the position of the punch and positioning pin, and cooperating with the I-shaped cover, the binding hole is set inside the cover during binding, thereby improving the aesthetics of the bound book.

[0121] According to the third concept of this application, by adding a central control module, the vibration parameters of the sorting section are dynamically adjusted according to the neatness of the previous binding, thereby improving sorting efficiency and alignment instructions, and improving overall binding efficiency.

[0122] The above description is only a preferred embodiment of this application. It should be noted that for those skilled in the art, several improvements and substitutions can be made without departing from the technical principles of this application, and these improvements and substitutions should also be considered within the scope of protection of this application.

Claims

1. A binding machine for automatically organizing financial vouchers, characterized in that, Comprising: a base, wherein a first conveyor belt and a second conveyor belt are provided on the base; an arranging portion, wherein the arranging unit is connected to the base via the first conveyor belt and the second conveyor belt, the first conveyor belt and the second conveyor belt are configured to control the movement direction of the arranging portion, and the arranging portion is configured to align financial vouchers; a binding portion, wherein the binding portion is connected to the base, and the binding portion is configured to bind financial vouchers; the binding portion comprises: a housing; a first sliding chute provided inside the housing, a drilling drill, wherein the drilling drill is provided in the first sliding chute, and the first sliding chute is configured to control the moving direction of the drilling drill; a positioning pin provided in the first sliding chute, a heating body is provided at a lower end of the positioning pin, and heat dissipation holes are provided on the housing; a central control module provided in the housing, wherein the central control module is configured to set working parameters of the binding portion; the arranging portion comprises: an arranging groove, wherein a first support plate and a second support plate are provided in the arranging groove; the first support plate and the second support plate are connected via an inclination angle structure, and the inclination angle structure is configured to control the inclination angle of the first support plate; a sensor connected to the first support plate, wherein the sensor is configured to acquire real-time weight data of financial vouchers; a vibration module connected to the first support plate; a first control module, wherein the first control module is configured to set a real-time inclination angle of the first support plate according to real-time weight of financial vouchers; the first control module is further configured to: predefine a financial voucher weight matrix A, set A(A1, A2, A3, A4), wherein A1 is a predefined first financial voucher weight, A2 is a predefined second financial voucher weight, A3 is a predefined third financial voucher weight, A4 is a predefined fourth financial voucher weight, and A1<A2<A3<A4; the first control module is further configured to predefine an inclination angle matrix B, set B(B1, B2, B3, B4), wherein B1 is a predefined first inclination angle, B2 is a predefined second inclination angle, B3 is a predefined third inclination angle, B4 is a predefined fourth inclination angle, and B1<B2<B3<B4; the first control module is further configured to acquire a real-time financial voucher weight a, and set a real-time inclination angle b of the first support plate according to the real-time financial voucher weight a; if a<A1, setting the real-time inclination angle b of the first support plate as the predefined first inclination angle B1, that is, b=B1; if A1<a<A2, setting the real-time inclination angle b of the first support plate as the predefined second inclination angle B2, that is, b=B2; if A2<a<A3, setting the real-time inclination angle b of the first support plate as the predefined third inclination angle B3, that is, b=B3; if A3<a<A4, setting the real-time inclination angle b of the first support plate as the predefined fourth inclination angle B4, that is, b=B4.

2. The automatic binding machine for organizing financial vouchers as described in claim 1, characterized in that, the inclination angle structure comprises a plurality of telescopic rods; one end of each telescopic rod is connected to the first support plate, and the other end of each telescopic rod is connected to the second support plate.

3. The automatic binding machine for organizing financial vouchers as described in claim 2, characterized in that, the arranging portion further comprises: a second control module, wherein the second control module is configured to set a vibration duration according to the real-time weight of financial vouchers.

4. The automatic binding machine for organizing financial vouchers as described in claim 3, characterized in that, the second control module is further configured to: A preset vibration duration matrix T is preset, and T(T1, T2, T3, T4) is set, where T1 is a preset first vibration duration, T2 is a preset second vibration duration, T3 is a preset third vibration duration, T4 is a preset fourth vibration duration, and T1<T2<T3<T4; The second control module is further configured to obtain a real-time financial voucher weight a, and set a real-time vibration duration t of the first support plate according to the real-time financial voucher weight a; If a<A1, set the real-time vibration duration t of the first support plate as the preset first vibration duration T1, that is, t=T1; If A1<a<A2, set the real-time vibration duration t of the first support plate as the preset second vibration duration T2, that is, t=T2; If A2<a<A3, set the real-time vibration duration t of the first support plate as the preset third vibration duration T3, that is, t=T3; If A3<a<A4, set the real-time vibration duration t of the first support plate as the preset fourth vibration duration T4, that is, t=T4.

5. The automatic binding machine for organizing financial vouchers as described in claim 4, characterized in that, The central control module is further configured to: obtain the neatness evaluation value of the previous batch of financial vouchers; The central control module sets a correction coefficient according to the neatness evaluation value to correct the real-time vibration duration of the current batch of financial vouchers.

6. The automatic binding machine for organizing financial vouchers as described in claim 5, characterized in that, The central control module is further configured to: A preset vibration duration correction coefficient matrix N is preset, and N(n1, n2, n3, n4) is set, where n1 is a preset first vibration duration correction coefficient, n2 is a preset second vibration duration correction coefficient, n3 is a preset third vibration duration correction coefficient, n4 is a preset fourth vibration duration correction coefficient, and 1<n1<n2<n3<n4; A preset neatness evaluation value matrix C is preset, and C(C1, C2, C3, C4) is set, where C1 is a preset first neatness evaluation value, C2 is a preset second neatness evaluation value, C3 is a preset third neatness evaluation value, C4 is a preset fourth neatness evaluation value, and C1<C2<C3<C4; obtain the neatness evaluation value c of the previous batch of financial vouchers, and set the real-time correction coefficient n; If C1 < c < C2, set the real-time correction coefficient n=n4, and the corrected real-time vibration duration t of the current batch of financial vouchers is n4 Ti(i=1,2,3,4); If C2<c<C3, set the real-time correction coefficient n=n3, and after correction, the real-time vibration duration t of the financial voucher of the current batch is n3 Ti(i=1,2,3,4); If C3 < c < C4, set the real-time correction coefficient n=n2, and after correction, the real-time vibration duration t of the financial voucher of the current batch is n2 Ti(i=1,2,3,4); If c > C4, set the real-time correction coefficient n = n1, and the real-time vibration duration t = n1 for the current batch of financial vouchers after correction. Ti(i=1,2,3,4).

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